The macrophage and epithelial cell mannose receptor (MR) binds carbohydrates on foreign and host molecules. Two portions of MR recognize carbohydrates: tandemly arranged C-type lectin domains facilitate carbohydrate-dependent macrophage uptake of infectious organisms, and the NH2-terminal cysteine-rich domain (Cys-MR) binds to sulfated glycoproteins including pituitary hormones. To elucidate the mechanism of sulfated carbohydrate recognition, we determined crystal structures of Cys-MR alone and complexed with 4-sulfated-N-acetylgalactosamine at 1.7 and 2.2 Å resolution, respectively. Cys-MR folds into an approximately three-fold symmetric β-trefoil shape resembling fibroblast growth factor. The sulfate portions of 4-sulfated-N-acetylgalactosamine and an unidentified ligand found in the native crystals bind in a neutral pocket in the third lobe. We use the structures to rationalize the carbohydrate binding specificities of Cys-MR and compare the recognition properties of Cys-MR with other β-trefoil proteins.
Crystal Structure of the Cysteine-Rich Domain of Mannose Receptor Complexed with a Sulfated Carbohydrate Ligand
Abbreviations used in this paper: 4-SO4-GalNAc, 4-sulfated-N-acetylgalactosamine; aFGF, acidic FGF; bFGF, basic FGF; CRD, carbohydrate-recognition domain; Cys-MR, cysteine-rich domain of the MR; FGF, fibroblast growth factor; MIRAS, multiple isomorphous replacement including anomalous scattering; MR, mannose receptor; SBP, sulfate binding protein.
Feinber, H., S. Park-Snyder, A.R. Kolatkar, C.T. Heise, M.E. Taylor, and W.I. Weis, manuscript submitted for publication.
Yang Liu, Arthur J. Chirino, Ziva Misulovin, Christine Leteux, Ten Feizi, Michel C. Nussenzweig, Pamela J. Bjorkman; Crystal Structure of the Cysteine-Rich Domain of Mannose Receptor Complexed with a Sulfated Carbohydrate Ligand. J Exp Med 3 April 2000; 191 (7): 1105–1116. doi: https://doi.org/10.1084/jem.191.7.1105
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